An interactive simulation of control and coordination strategies for swarms of autonomous construction robots

Q4 Engineering Spool Pub Date : 2024-07-20 DOI:10.47982/spool.2024.1.01
Jordan H Boyle
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Abstract

There is an established idea – found in science fiction, architectural studios, and scientific papers alike – of stainable buildings crafted from bio-based materials, colonized by plant and animal life, and blending seamlessly into the natural surroundings. Such buildings might one day be built, maintained and remodelled by swarms of autonomous robots, allowing them to evolve in response to the changing needs of their inhabitants. Inspired by that vision, this paper contributes to the field of swarm intelligence with a focus on robotic construction and human-swarm interaction. Along with a short literature review on robotic building, swarm intelligence and biocompatible building materials, the paper presents an open-source simulation of abstracted termite-like swarm construction. The focus is mainly on human-swarm interaction, specifically how to influence the emergent behaviour of an autonomous swarm in order to elicit a desired outcome while retaining the robustness and adaptability of a self-organized system. The simulator is used to demonstrate a set of four autonomous swarm behaviours that are representative of construction tasks.
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交互式模拟自主建筑机器人群的控制和协调策略
在科幻小说、建筑工作室和科学论文中,都有这样一种既定的想法,即由生物基材料制成的可染色建筑,由植物和动物定居,并与周围的自然环境完美融合。有朝一日,这样的建筑可能会由成群的自主机器人建造、维护和改造,使它们能够根据居民不断变化的需求而进化。受到这一愿景的启发,本文以机器人建筑和人机交互为重点,为蜂群智能领域做出了贡献。在对机器人建筑、蜂群智能和生物兼容建筑材料进行简短的文献综述的同时,本文还介绍了抽象白蚁群建筑的开源模拟。重点主要放在人与蜂群的互动上,特别是如何影响自主蜂群的突发行为,以获得理想的结果,同时保持自组织系统的稳健性和适应性。该模拟器用于演示具有代表性的四种自主蜂群行为。
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来源期刊
Spool
Spool Engineering-Architecture
CiteScore
0.40
自引率
0.00%
发文量
0
审稿时长
21 weeks
期刊最新文献
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